首页> 外文期刊>Acta Agriculturae Scandinavica. Section B, Soil and Plant Science >Germination-enhancing and zinc-sparing roles for selenium in broccoli
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Germination-enhancing and zinc-sparing roles for selenium in broccoli

机译:西兰花中硒的发芽和减锌作用

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Large areas of China have soils low in both available selenium (Se) and zinc (Zn). In order to investigate whether Se supplied as either selenate or selenite can increase germination and growth compared with low-Se controls we used broccoli, an important vegetable with anticancer effects, especially when biofortified with Se. Broccoli was grown under both Zn adequacy and Zn deficiency to determine whether interactions between these minerals affect plant growth. Selenite and selenate at a wide range of doses increased the speed and extent of germination. Both inorganic Se forms increased early root and shoot growth at low concentrations, with selenite having a stronger effect than selenate. A sand culture trial showed a similar growth increase due to low-dose Se under Zn deficiency but not under Zn adequacy. Conversely, at high Se levels, the results provided evidence from biomass, water use, photosynthesis and gas exchange that broccoli growth was inhibited at high Se levels, with selenite being more toxic than selenate. In this broccoli trial, the two Se forms were equally effective in increasing leaf Se concentration, whereas in most plants selenite is largely converted to organic Se forms and stored in the roots. This study suggests that Se, supplied either as selenate or selenite, may improve germination and growth in broccoli, especially on Zn-deficient soils. Field trials conducted on soils which are very low in both plant-available Se and Zn are needed.
机译:中国大片地区的土壤中有效硒(Se)和锌(Zn)均较低。为了研究硒作为硒酸盐还是亚硒酸盐,与低硒对照相比是否能促进发芽和生长,我们使用了西兰花,西兰花是一种具有抗癌作用的重要蔬菜,特别是在添加硒的情况下。西兰花是在锌充足和锌缺乏的条件下生长的,以确定这些矿物质之间的相互作用是否影响植物的生长。各种剂量的亚硒酸盐和硒酸盐增加了发芽的速度和程度。在低浓度下,两种无机硒形式均可增加早期的根和茎生长,其中亚硒酸盐的作用强于硒酸盐。一项砂培养试验表明,由于锌缺乏时低剂量的硒导致了类似的增长,但锌不足则没有。相反,在高硒水平下,结果提供了生物量,用水,光合作用和气体交换的证据,表明在高硒水平下西兰花的生长受到抑制,亚硒酸盐的毒性比硒酸盐高。在这项花椰菜试验中,两种硒形式在提高叶片硒浓度方面均有效,而在大多数植物中,亚硒酸盐主要转化为有机硒形式并储存在根中。这项研究表明,以硒酸盐或亚硒酸盐形式提供的硒可以改善西兰花的发芽和生长,特别是在缺锌的土壤上。需要在植物中可用的硒和锌含量都非常低的土壤上进行田间试验。

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